Effects of winter soil warming on crop biomass carbon loss from organic matter degradation

Jizhong Zhou, Thomas W. Crowther, Constantin M. Zohner, Jiabao Zhang, Xiaoyuan Yan, Ji Chen, Yuting Liang, Han Hu, Yishen Sun, Haowei Ni, Jixian Ding, Weigen Huang
2024-10-14

SCID:  54.1/yxjeez4j
Global warming poses an unprecedented threat to agroecosystems. Although temperature increases are more pronounced during winter than in other seasons, the impact of winter warming on crop biomass carbon has not been elucidated. Here we integrate global observational data with a decade-long field experiment to uncover a significant negative correlation between winter soil temperature and crop biomass carbon. For every degree Celsius increase in winter soil temperature, straw and grain biomass carbon decreased by 6.6 ( ± 1.7) g kg-1 and 10.2 ( ± 2.3) g kg-1, respectively. This decline is primarily attributed to the loss of soil organic matter and micronutrients induced by warming. Ignoring the adverse effects of winter warming on crop biomass carbon could result in an overestimation of total food production by 4% to 19% under future warming scenarios. Our research highlights the critical need to incorporate winter warming into agricultural productivity models for more effective climate adaptation strategies. This study reveals that winter soil warming causes significant crop biomass carbon loss due to soil organic matter degradation. Ignoring this effect could lead to a 4-19% overestimation of future food production.
Publication Details
Publication Date
2024-10-14
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Jizhong Zhou
Thomas W. Crowther
Constantin M. Zohner
Jiabao Zhang
Xiaoyuan Yan
Ji Chen
Yuting Liang
Han Hu
Yishen Sun
Haowei Ni
Jixian Ding
Weigen Huang
Explore More Research
Use the citation graph to discover related papers and expand your research horizons.
Click any node to explore
Download PDF
100%